首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Energy-Efficient Non-Orthogonal Multicast and Unicast Transmission of Cell-Free Massive MIMO Systems With SWIPT
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Energy-Efficient Non-Orthogonal Multicast and Unicast Transmission of Cell-Free Massive MIMO Systems With SWIPT

机译:具有SWIPT的无细胞大规模MIMO系统的节能非正交多播和单播传输

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摘要

This work investigates the energy-efficient resource allocation for layered-division multiplexing (LDM) based non-orthogonal multicast and unicast transmission in cell-free massive multiple-input multiple-output (MIMO) systems, where each user equipment (UE) performs wireless information and power transfer simultaneously. To begin with, the achievable data rates for multicast and unicast services are derived in closed form, as well as the received radio frequency (RF) power at each UE. Based on the analytical results, a nonsmooth and nonconvex optimization problem for energy efficiency (EE) maximization is formulated, which is however a challenging fractional programming problem with complex constraints. To suit the massive access setting, a first-order algorithm is developed to find both initial feasible point and the nearly optimal solution. Moreover, an accelerated algorithm is designed to improve the convergence speed. Numerical results demonstrate that the proposed first-order algorithms can achieve almost the same EE as that of second-order approaches yet with much lower computational complexity, which provides insight into the superiority of the proposed algorithms for massive access in cell-free massive MIMO systems.
机译:该工作调查了基于分层多路复用(LDM)的非正交多播和单播传输在无单元的大规模多输入多输出(MIMO)系统中的节能资源分配,其中每个用户设备(UE)执行无线信息和电力同时传输。首先,可以以封闭形式导出多播和单播服务的可实现的数据速率,以及每个UE的接收的射频(RF)功率。基于分析结果,制定了用于能效(EE)最大化的非透射性优化问题,但是具有复杂约束的挑战性分数规划问题。为了适应大规模的访问设置,开发了一阶算法以找到初始可行点和近乎最佳的解决方案。此外,设计了加速算法以提高收敛速度。数值结果表明,所提出的一阶算法可以实现几乎相同的EE,但是具有大得多的计算复杂度,这提供了对巨型算法的优越性的洞察,以便在无细胞的大规模MIMO系统中的大量访问的优势。

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